Yunnan Key Laboratory for Wild Plant Resources, Department of Economic Plants and Biotechnology, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming 650201, China.
CAS Center for Excellence in Biotic Interactions, University of Chinese Academy of Sciences, Beijing 100049, China.
Plant Physiol. 2024 Jan 31;194(2):758-773. doi: 10.1093/plphys/kiad556.
Touch induces marked morphological changes in plants, including reduced rosette diameters and delayed flowering, a process called thigmomorphogenesis. Previous studies have revealed that thigmomorphogenesis in Arabidopsis (Arabidopsis thaliana) results from touch-induced accumulation of jasmonic acid (JA) and GIBBERELLIN 2-OXIDASE7 (GA2ox7) transcripts, which encode a gibberellin (GA) catabolism enzyme, leading to reduced levels of active GAs. However, the mechanisms underlying thigmomorphogenesis remain uncharacterized. Here, we showed that touch induces ethylene (ET) production in Arabidopsis. After touch treatment, ET biosynthesis and signaling mutants exhibited even greater thigmomorphogenic changes and more decreased GA4 contents than did wild-type (WT) plants. Biochemical analysis indicated that the transcription factor ETHYLENE INSENSITIVE3 (EIN3) of the ET pathway binds to the promoter of GA2ox8 (encoding another GA 2-oxidase performing the same GA modification as GA2ox7) and represses GA2ox8 transcription. Moreover, MYC2, the master regulator of JA signaling, directly promoted GA2ox7 expression by binding the G-box motif on GA2ox7 promoter. Further genetic analysis suggested that the ET and JA pathways independently control the expression of GA2ox8 and GA2ox7, respectively. This study reveals that the ET pathway is a novel repressor of touch-induced thigmomorphogenesis and highlights that the ET and JA pathways converge on GA catabolism but play opposite roles to fine-tune GA4 content during thigmomorphogenesis.
触摸会引起植物明显的形态变化,包括缩小莲座直径和延迟开花,这个过程称为向触性形态发生。先前的研究表明,拟南芥(Arabidopsis thaliana)的向触性形态发生是由触摸诱导的茉莉酸(JA)和赤霉素 2-氧化酶 7(GA2ox7)转录本积累引起的,这些转录本编码一种赤霉素(GA)分解代谢酶,导致活性 GA 水平降低。然而,向触性形态发生的机制仍未被阐明。在这里,我们表明触摸会诱导拟南芥产生乙烯(ET)。在触摸处理后,ET 生物合成和信号突变体表现出比野生型(WT)植物更大的向触性形态发生变化和更多的 GA4 含量减少。生化分析表明,ET 途径的转录因子 ETHYLENE INSENSITIVE3(EIN3)结合 GA2ox8(编码另一种执行与 GA2ox7 相同 GA 修饰的 GA 2-氧化酶)的启动子,并抑制 GA2ox8 的转录。此外,JA 信号的主调控因子 MYC2 通过结合 GA2ox7 启动子上的 G 盒基序直接促进 GA2ox7 的表达。进一步的遗传分析表明,ET 和 JA 途径分别独立地控制 GA2ox8 和 GA2ox7 的表达。这项研究揭示了 ET 途径是触摸诱导的向触性形态发生的一个新的抑制剂,并强调了 ET 和 JA 途径在 GA 分解代谢中独立地控制,但在向触性形态发生过程中对 GA4 含量起相反的作用。